Russell G A, Dunbar B, Fothergill-Gilmore L A
Biochem J. 1986 May 15;236(1):115-26. doi: 10.1042/bj2360115.
The complete amino acid sequence of chicken skeletal-muscle enolase, comprising 433 residues, was determined. The sequence was deduced by automated sequencing of hydroxylamine-cleavage, CNBr-cleavage, o-iodosobenzoic acid-cleavage, clostripain-digest and staphylococcal-proteinase-digest fragments. The presence of several acid-labile peptide bonds and the tenacious aggregation of most CNBr-cleavage fragments meant that a commonly used sequencing strategy involving initial CNBr cleavage was unproductive. Cleavage at the single Asn-Gly peptide bond with hydroxylamine proved to be particularly useful. Comparison of the sequence of chicken enolase with the two yeast enolase isoenzyme sequences shows that the enzyme is strongly conserved, with 60% of the residues identical. The histidine and arginine residues implicated as being important for the activity of yeast enolase are conserved in the chicken enzyme. Secondary-structure predictions are analysed in an accompanying paper [Sawyer, Fothergill-Gilmore & Russell (1986) Biochem. J. 236, 127-130].
已确定鸡骨骼肌烯醇化酶完整的氨基酸序列,该序列由433个残基组成。此序列是通过对羟胺裂解片段、溴化氰裂解片段、邻碘苯甲酸裂解片段、梭菌蛋白酶消化片段和葡萄球菌蛋白酶消化片段进行自动测序推导得出的。由于存在几个对酸不稳定的肽键以及大多数溴化氰裂解片段的顽固聚集,这意味着常用的先进行溴化氰裂解的测序策略没有成效。事实证明,用羟胺裂解单个天冬酰胺 - 甘氨酸肽键特别有用。将鸡烯醇化酶的序列与两种酵母烯醇化酶同工酶序列进行比较表明,该酶具有高度保守性,60%的残基相同。在酵母烯醇化酶活性中起重要作用的组氨酸和精氨酸残基在鸡的该种酶中也保守存在。二级结构预测将在随附论文中进行分析[索耶、福瑟吉尔 - 吉尔摩和拉塞尔(1986年)《生物化学杂志》236卷,第127 - 130页]。